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基于电子平台修正的舰载雷达标校数据分析研究
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作者 王德良 赵良萍 陈飞 《舰船科学技术》 北大核心 2022年第24期132-136,共5页
舰载数字相控阵雷达在交付列装前需开展坞内的静态标校和出海航试的动态标校,其数据分析是一项重要的工作。本文介绍标校工程实施方案,建立基于雷达测量目标方向向量的电子平台坐标转换模型,分析阵面姿态和舰姿态数据对雷达测角精度的影... 舰载数字相控阵雷达在交付列装前需开展坞内的静态标校和出海航试的动态标校,其数据分析是一项重要的工作。本文介绍标校工程实施方案,建立基于雷达测量目标方向向量的电子平台坐标转换模型,分析阵面姿态和舰姿态数据对雷达测角精度的影响;不同扫描角下的姿态参数误差传递不同,与雷达测角指标要求相结合,对雷达标校误差样本的异常数据进行分析。仿真和实际试验应用表明,该方法有助于标校数据分析和平台参数装订误差收敛,对雷达生产工程试验有指导性意义。 展开更多
关键词 标校 数据分析 平台修正 舰载相控阵雷达
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基于BP神经网络的重力仪高机动状态快速调平修正技术
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作者 杨晔 董光泰 +1 位作者 高巍 张子山 《中国惯性技术学报》 EI CSCD 北大核心 2024年第5期457-462,共6页
针对平台式重力仪大机动状态后测量能力恢复慢的问题,提出一种基于BP神经网络的重力仪稳定平台快速调平修正技术。首先,针对动态重力测量在测量平台大机动状态后调平能力不足的问题,研究了基于BP神经网络的平台姿态高效、准确解算方法;... 针对平台式重力仪大机动状态后测量能力恢复慢的问题,提出一种基于BP神经网络的重力仪稳定平台快速调平修正技术。首先,针对动态重力测量在测量平台大机动状态后调平能力不足的问题,研究了基于BP神经网络的平台姿态高效、准确解算方法;其次,利用惯性元件和卫星导航系统(GNSS)的信息优化BP神经网络,形成不同条件的平台姿态提取优化模型;最后,利用模拟仿真实验和实际机载动态重力测量数据验证所提方法的有效性和准确性。实验结果表明在大机动的动态条件下采用所提方法可以扶正重力仪稳定平台,将机动后重力仪稳定平台稳定时间缩短83.3%以上,提升动态重力测量效率。 展开更多
关键词 动态重力测量 平台式重力仪 BP神经网络 平台快速修正
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Correction method for non-landing measuring of vehicle-mounted theodolite based on static datum conversion 被引量:6
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作者 LIU JinBo ZHANG XiaoHu +3 位作者 LIU HaiBo YUAN Yun ZHU ZhaoKun YU QiFeng 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第9期2268-2277,共10页
During the non-landing measuring of vehicle mounted theodolite, especially under high-speed tracking measurement, the misalignment of theodolite's center of mass and spindle etc. will cause high-frequency vibratio... During the non-landing measuring of vehicle mounted theodolite, especially under high-speed tracking measurement, the misalignment of theodolite's center of mass and spindle etc. will cause high-frequency vibration of theodolite platform, increase the observation error of targets and even unbelievable results. In this paper, a correction method of non-landing measuring of theodolite based on static datum conversion is presented, which can effectively improve the observation accuracy of theodolite. The CCD camera is fixed to the theodolite platform to calculate the gesture shaking quantity of theodolite platform in geodetic coordinate system through the real time imaging of static datum. The observation results of theodolite are corrected by using such shaking quantity. The experiment shows that the correction accuracy exceeds 10 s of arc. The intrinsic parameter calibration technology of camera based on stellar angular distance and absolute conic put forward in this paper can prevent the estimated error of extrinsic parameters influencing the intrinsic parameter calibration and improve the intrinsic parameter calibration accuracy; the static datum conversion technology can reduce the influence of installation error of camera and theodolite platform on gesture measuring of the platform. The simulation experiment shows that when the shaking range of the platform is less than 30 min of arc, the influence of the three-axis installation error of camera within 3deg on the accuracy of correction results is less than 8 s of arc. The method in this paper can be extended to and used in the field of gesture shaking measuring and micro-structure deformation of various unstable platforms, therefore it is of important theoretical research significance and has wide engineering application prospect. 展开更多
关键词 vehicle-mounted theodolite non-landing Measuring error correction static datum conversion decoupling calibration
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